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Functional nanostructures and metama...
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Sidorenko, Anatolie.
Functional nanostructures and metamaterials for superconducting spintronicsfrom superconducting qubits to self-organized nanostructures /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Functional nanostructures and metamaterials for superconducting spintronicsedited by Anatolie Sidorenko.
Reminder of title:
from superconducting qubits to self-organized nanostructures /
other author:
Sidorenko, Anatolie.
Published:
Cham :Springer International Publishing :2018.
Description:
xvii, 270 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Nanotechnology.
Online resource:
http://dx.doi.org/10.1007/978-3-319-90481-8
ISBN:
9783319904818$q(electronic bk.)
Functional nanostructures and metamaterials for superconducting spintronicsfrom superconducting qubits to self-organized nanostructures /
Functional nanostructures and metamaterials for superconducting spintronics
from superconducting qubits to self-organized nanostructures /[electronic resource] :edited by Anatolie Sidorenko. - Cham :Springer International Publishing :2018. - xvii, 270 p. :ill., digital ;24 cm. - NanoScience and technology,1434-4904. - NanoScience and technology..
This book demonstrates how the new phenomena in the nanometer scale serve as the basis for the invention and development of novel nanoelectronic devices and how they are used for engineering nanostructures and metamaterials with unusual properties. It discusses topics such as superconducting spin-valve effect and thermal spin transport, which are important for developing spintronics; fabrication of nanostructures from antagonistic materials like ferromagnets and superconductors, which lead to a novel non-conventional FFLO-superconducting state; calculations of functional nanostructures with an exotic triplet superconductivity, which are the basis for novel nanoelectronic devices, such as superconducting spin valve, thin-film superconducting quantum interference devices (SQUIDs) and memory-elements (MRAM) Starting with theoretical chapters about triplet superconductivity, the book then introduces new ideas and approaches in the fundamentals of superconducting electronics. It presents various quantum devices based on the new theoretical approaches, demonstrating the enormous potential of the electronics of 21st century - spintronics. The book is useful for a broad audience, including researchers, engineers, PhD graduates, students and others wanting to gain insights into the frontiers of nanoscience.
ISBN: 9783319904818$q(electronic bk.)
Standard No.: 10.1007/978-3-319-90481-8doiSubjects--Topical Terms:
193873
Nanotechnology.
LC Class. No.: T174.7 / .F863 2018
Dewey Class. No.: 620.5
Functional nanostructures and metamaterials for superconducting spintronicsfrom superconducting qubits to self-organized nanostructures /
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This book demonstrates how the new phenomena in the nanometer scale serve as the basis for the invention and development of novel nanoelectronic devices and how they are used for engineering nanostructures and metamaterials with unusual properties. It discusses topics such as superconducting spin-valve effect and thermal spin transport, which are important for developing spintronics; fabrication of nanostructures from antagonistic materials like ferromagnets and superconductors, which lead to a novel non-conventional FFLO-superconducting state; calculations of functional nanostructures with an exotic triplet superconductivity, which are the basis for novel nanoelectronic devices, such as superconducting spin valve, thin-film superconducting quantum interference devices (SQUIDs) and memory-elements (MRAM) Starting with theoretical chapters about triplet superconductivity, the book then introduces new ideas and approaches in the fundamentals of superconducting electronics. It presents various quantum devices based on the new theoretical approaches, demonstrating the enormous potential of the electronics of 21st century - spintronics. The book is useful for a broad audience, including researchers, engineers, PhD graduates, students and others wanting to gain insights into the frontiers of nanoscience.
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based on 0 review(s)
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EB T174.7 F979 2018 2018
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1 records • Pages 1 •
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http://dx.doi.org/10.1007/978-3-319-90481-8
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